首页> 外文期刊>Sensor Letters: A Journal Dedicated to all Aspects of Sensors in Science, Engineering, and Medicine >Characterization of Polyaniline-Based Ammonia Gas Sensors Prepared by Means of Spray Coating and Ink-Jet Printing
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Characterization of Polyaniline-Based Ammonia Gas Sensors Prepared by Means of Spray Coating and Ink-Jet Printing

机译:通过喷涂和喷墨印刷制备的基于聚苯胺的氨气传感器的表征

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摘要

This work deals with the process of ammonia gas sensor fabrication and its detailed characterization. The sensor active layer was deposited from a polyaniline dispersion. The prepared polyaniline dispersion is based on poly(N-vinylpyrrolidone), acting as a dispersion stabilizer. The dispersion synthesis was tuned towards the printing and coating process. The prepared ink was water-based. The sensor active layer was deposited by means of two different techniques; the ink-jet printing and spray coating. The ink was first optimized using the poly(ethylene terephthalate) foil as the substrate material. The optimal printing parameters and ink properties for the used deposition processes were found. The polyaniline films as well as the performance of fabricated sensors, prepared by means of the both techniques were compared. The polyaniline films were characterized by means of UV-vis spectroscopy, optical microscopy, atomic force microscopy, profilometry and electrical measurements. The differences in the film morphology and aspects of the each of the two used deposition techniques are analyzed and discussed in detail. The sensors obtained from the both techniques showed response to ammonia gas, as well as its concentration. The synthesized ink in combination with the suggested deposition processes could be therefore potentially used for the future manufacturing of the large area ammonia gas sensors.
机译:这项工作涉及氨气传感器制造过程及其详细特性。传感器活性层由聚苯胺分散体沉积而成。制备的聚苯胺分散体基于聚(N-乙烯基吡咯烷酮),起分散稳定剂的作用。分散体合成调整到印刷和涂布过程。制备的油墨是水基的。传感器有源层是通过两种不同的技术沉积的。喷墨印刷和喷涂。首先使用聚对苯二甲酸乙二酯箔作为基材来优化油墨。找到了所用沉积工艺的最佳印刷参数和油墨性能。比较了通过两种技术制备的聚苯胺薄膜以及制成的传感器的性能。借助于紫外可见光谱,光学显微镜,原子力显微镜,轮廓测定法和电学测量来表征聚苯胺膜。分别详细分析和讨论了两种所用沉积技术各自的薄膜形态和方面的差异。从这两种技术获得的传感器均显示出对氨气及其浓度的响应。因此,与建议的沉积工艺相结合的合成油墨可潜在地用于大面积氨气传感器的未来制造。

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